首页> 外文学位 >The kinetics of nitrate uptake from flowing solutions by rice: Influences of pretreatment nitrate concentration and irradiance.
【24h】

The kinetics of nitrate uptake from flowing solutions by rice: Influences of pretreatment nitrate concentration and irradiance.

机译:水稻从流动溶液中吸收硝酸盐的动力学:预处理硝酸盐浓度和辐照度的影响。

获取原文
获取原文并翻译 | 示例

摘要

The kinetics of nitrate (NO{dollar}sbsp{lcub}3{rcub}{lcub}-{rcub}){dollar} uptake by intact rice plants was studied with a system which was designed and built to measure the depletion of NO{dollar}sbsp{lcub}3{rcub}{lcub}-{rcub}{dollar} in solutions flowing over the plant roots. The system was characterized through a comprehensive uncertainty propagation calculation, and through experiments demonstrating that the fluid in the plant root chamber was mixed well. A Michaelis-Menten kinetic model was applied, allowing the uptake kinetics to be characterized by two parameters, K{dollar}sb{lcub}rm m{rcub}{dollar} (the apparent half-velocity constant), and V{dollar}sb{lcub}rm max{rcub}{dollar} (the apparent maximum uptake rate). The uncertainty propagation calculation revealed that the measurement system was capable of determining the kinetic parameters with a high degree of accuracy.; Preliminary experiments suggested that pretreatment NO{dollar}sbsp{lcub}3{rcub}{lcub}-{rcub}{dollar} concentration (50 to 800 {dollar}mu{dollar}M), affected the NO{dollar}sbsp{lcub}3{rcub}{lcub}-{rcub}{dollar} uptake rate of intact rice plants from solutions containing 200 {dollar}mu{dollar}M NO{dollar}sbsp{lcub}3{rcub}{lcub}-{rcub}.{dollar} The preliminary experiments also validated experimental protocols which were used in the kinetic experiments.; Kinetic experiments revealed that both K{dollar}sb{lcub}rm m{rcub}{dollar} and V{dollar}sb{lcub}rm max{rcub}{dollar} varied with the pretreatment NO{dollar}sbsp{lcub}3{rcub}{lcub}-{rcub}{dollar} concentration (50 to 800 {dollar}mu{dollar}M), although the changes in V{dollar}sb{lcub}rm max{rcub}{dollar} were more consistent than those in K{dollar}sb{lcub}rm m{rcub}.{dollar} Plants pretreated in high concentrations of NO{dollar}sbsp{lcub}3{rcub}{lcub}-{rcub}{dollar} had lower V{dollar}sb{lcub}rm max{rcub}{dollar} and higher K{dollar}sb{lcub}rm m{rcub}{dollar} than plants pretreated in lower concentrations of NO{dollar}sbsp{lcub}3{rcub}{lcub}-{rcub}.{dollar} The changes in the parameters compensate for the pretreatment NO{dollar}sbsp{lcub}3{rcub}{lcub}-{rcub}{dollar} concentration to maintain a fairly constant uptake rate. Changes in the kinetic parameters occur within 4 h of a change in the background NO{dollar}sbsp{lcub}3{rcub}{lcub}-{rcub}{dollar} concentration, and continue for more than 24 h.; Kinetic experiments also revealed that a 24 h pretreatment without illumination stopped NO{dollar}sbsp{lcub}3{rcub}{lcub}-{rcub}{dollar} uptake. Four to eight hours of irradiation was required after the 24 h light deprivation before NO{dollar}sbsp{lcub}3{rcub}{lcub}-{rcub}{dollar} uptake resumed. The uptake rates after 8 h of illumination were still well below those of plants which had been irradiated throughout pretreatment.; The implications of the results to nitrogen removal by artificial wetland wastewater treatment system are discussed.
机译:研究了完整稻株对硝酸盐(NO {dollar} sbsp {lcub} 3 {rcub} {lcub}-{rcub}){dollar}吸收的动力学,该系统的设计和构建用于测量NO的消耗{美元} sbsp {lcub} 3 {rcub} {lcub}-{rcub} {dollar}遍及植物根部的溶液。该系统的特点是通过全面的不确定性传播计算和通过实验证明了植物根室中的流体混合得很好。应用了Michaelis-Menten动力学模型,该动力学模型可以用两个参数表征吸收动力学,即K {dollar} sb {lcub} rm m {rcub} {dollar}(视在半速度常数)和V {dollar} sb {lcub} rm max {rcub} {dollar}(最大吸收率)。不确定度传播计算表明,该测量系统能够高精度地确定动力学参数。初步实验表明,预处理NO {dollar} sbsp {lcub} 3 {rcub} {lcub}-{rcub} {dollar}的浓度(50至800 {dollar} mu {dollar} M)会影响NO {dollar} sbsp { lcub} 3 {rcub} {lcub}-{rcub} {dollar}从含有200 {dol} mu {dollar} M NO {dollar} sbsp {lcub} 3 {rcub} {lcub}-的溶液中完整稻植物的吸收率{rcub}。{dollar}初步实验还验证了动力学实验中使用的实验方案。动力学实验表明,K {dollar} sb {lcub} rm m {rcub} {dollar}和V {dollar} sb {lcub} rm max {rcub} {dollar}随NO {dollar} sbsp {lcub}预处理而变化3 {rcub} {lcub}-{rcub} {dollar}浓度(50至800 {dollar} mu {dollar} M),尽管V {dollar} sb {lcub} rm max {rcub} {dollar}的变化是比K {dollar} sb {lcub} rm m {rcub}中的一致性更高。{dollar}经过高浓度NO {dollar} sbsp {lcub} 3 {rcub} {lcub}-{rcub} {dollar}预处理的植物与以较低浓度NO {dolb} sbsp {lcub预处理过的植物)相比,V {dollar} sb {lcub} rm max {rcub} {dollar}较低,而K {dollar} sb {lcub} rm m {rcub} {dollar}较高} 3 {rcub} {lcub}-{rcub}。{dollar}参数的变化可补偿预处理NO {dollar} sbsp {lcub} 3 {rcub} {lcub}-{rcub} {dollar}的浓度,以保持浓度相当恒定的吸收率。动力学参数的变化发生在背景NO {dollar} sbsp {lcub} 3 {rcub} {lcub}-{rcub} {dollar}浓度变化的4小时内,并持续超过24小时。动力学实验还表明,在没有光照的情况下进行24小时的预处理会停止NO {dollar} sbsp {lcub} 3 {rcub} {lcub}-{rcub} {dollar}的吸收。在禁食24小时后,需要4至8个小时的辐射,然后才能恢复NO {dollar} sbsp {lcub} 3 {rcub} {lcub}-{rcub} {dollar}的摄取。光照8小时后的吸收率仍远低于在整个预处理过程中被辐照的植物。讨论了结果对人工湿地废水处理系统脱氮的影响。

著录项

  • 作者

    Raman, Dave Raj.;

  • 作者单位

    Cornell University.;

  • 授予单位 Cornell University.;
  • 学科 Engineering Agricultural.; Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 215 p.
  • 总页数 215
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业工程;植物学;
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号